| Component sequencing | Consider when unsorted parts must be picked into a sequence trolley inside a human-designed logistics area; BMW is starting this workflow with Figure 03.[BMW1] | Prefer when the pick-and-place step stays inside one bounded station and part presentation can be controlled.[FAN1] | Use for repeatable transport after sequencing. BMW describes a tugger or Smart Transport Robot carrying the prepared trolley onward.[BMW1] | An established option for stable, high-throughput picking when part presentation, reach and downstream placement are repeatable.[FAN1] |
|---|
| Line-side logistics | Use only when mobility and manipulation are both required and the task cannot be separated into a transport step and a fixed handling step.[BMW1][MB1] | Fit for assisted loading or presentation at a defined line-side station, subject to the application safety case.[FAN1][ISO2][ISO3] | Use for recurring tote, rack or cart movement on mapped routes where manipulation is not part of the mission.[BMW1] | Use conveyors, tuggers or fixed transfer when flow and destinations are stable enough to engineer once.[BMW1][FAN1] |
|---|
| Material handling | Pilot for mixed, human-scale handling across changing workstations. BMW’s completed Figure 02 pilot establishes one sheet-metal positioning case, not universal fit.[BMW1][BMW2] | Prefer for bounded, lower-payload handling where a human shares the process and the workstation can be integrated around the application.[FAN1][ISO3] | Prefer for moving material between stations without grasping, orienting or placing individual parts.[BMW1] | An established option for fast, repeatable transfer, heavy payloads or a mature process with predictable geometry.[FAN1] |
|---|
| Bin picking | Consider when the robot must reposition its body, manage mixed presentation and complete a downstream mobile step.[BMW1] | Prefer for lower-rate, bounded picks when the bin, vision and destination remain at one station.[FAN1] | An AMR moves the bin; it does not replace the picking system unless a supported manipulator is integrated.[BMW1] | An established option when vision-guided picking can be engineered around a stable bin, part family and placement target.[FAN1] |
|---|
| Machine tending | Roadmap candidate where several human-designed machines must be served by one mobile platform. Hyundai lists machine tending, but not as a proven production deployment.[HMG1] | Strong fit for one machine or a compact cell when loading, controls and guarding can be integrated around a repeatable cycle.[FAN1][ISO2] | Useful for workpiece transport between machines; manipulation requires a separate top module or robot cell.[FAN1] | An established option for high utilization on a stable machine, part family and loading geometry.[FAN1] |
|---|
| Inspection | Consider only when inspection must be combined with handling or tool use. Mercedes is testing initial component quality checks with Apollo.[MB1] | Prefer when a sensor or gauge must be presented repeatedly to a part at a bounded workstation.[FAN1] | Prefer for flat, repeatable routes when a validated inspection payload can be integrated without manipulation.[BMW1][FAN1] | An established option for repeatable in-line visual, acoustic or metrology checks; BMW already describes fixed camera and sensor AI for quality inspection.[BMW1][FAN1] |
|---|
| Kitting | Candidate when one system must pick varied items, verify them and move between kit locations built for people.[MB1][BMW1] | Prefer when kit locations can be consolidated at a bounded station with controlled item presentation.[FAN1] | Prefer for moving complete kits or presenting racks; use a separate picking system for item selection.[MB1] | An established option when item families, volumes and presentation justify a dedicated pick-and-sort cell.[FAN1] |
|---|
| Assembly | Treat as a pilot or roadmap unless the exact subtask has customer-confirmed results. Hyundai’s component-assembly milestone is announced for 2030.[HMG1] | Prefer for low-force, repeatable assembly where human and robot roles can be validated at one workstation.[FAN1][ISO3] | Use to feed the assembly process, not as the assembly mechanism unless a manipulator is engineered and validated.[BMW1] | An established option for stable, precise, high-volume assembly with known variants and controlled interfaces.[FAN1] |
|---|